轻质混凝土在5%盐酸溶液中与不同尺寸的膨胀聚苯乙烯的耐久性

Saloma Hasyim, S. Nurjannah, Arie Putra Usman, F. S. Putra, M. Hashim
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摘要

在混凝土中使用泡沫塑料和发泡聚苯乙烯(EPS)可以显著降低混凝土的密度。轻质混凝土的成分包括波特兰复合水泥、膨胀聚苯乙烯、水和泡沫。水泥与骨料的配比为1:2.75,发泡剂与水的配比为1:40,W/C为0.485。使用的膨胀聚苯乙烯尺寸有1mm、2mm和3mm。所有标本均固化28 d。28 d混凝土试验结果显示,LWC-1、LWC-2、LWC-3和普通砂浆混合料的抗压强度分别为6.64 MPa、5.53 MPa、3.73 MPa和13.58 MPa,密度分别为886 kg/m3、830 kg/m3、782 kg/m3和1870 kg/m3。本研究的目的是通过使用5%盐酸(HCl)溶液来确定EPS轻质混凝土的耐久性、密度和抗压强度。在以往的研究中,EPS在混合前都是经过加热的。在本研究中,EPS未被加热,直接用于混合过程。EPS轻量化混凝土在降低结构质量、降低地震荷载方面具有很大的潜力。样品有三种不同的处理条件:开放室、完全浸泡在HCl 5%中、循环处理。测定轻质混凝土在HCl溶液中浸泡28天和56天的耐久性,得到抗压强度和密度降低的结果。条件III在浸泡56天时密度和抗压强度降低最为显著。普通砂浆的耐久性能最好,密度和抗压强度分别降低14.08%和32.88%,而LWC-1的耐久性能最好,密度和抗压强度分别降低18.41%和35.44%。
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The durability of lightweight concrete against 5% hydrochloric acid solution with various size of expanded polystyrene
The use of foam and expanded polystyrene (EPS) in concrete can significantly reduce the density of concrete. The composition of lightweight concrete consists of Portland composite cement, expanded polystyrene, water, and foam. The ratio of the composition used is 1:2.75 for cement and aggregate, 1:40 for foaming agent and water, and 0.485 for W/C. The expanded polystyrene sizes used are 1 mm, 2 mm, and 3 mm. All specimens were cured for 28 days. The concrete test results at 28 days provided compressive strengths of 6.64 MPa, 5.53 MPa, 3.73 MPa, and 13.58 MPa, as well as density of 886 kg/m3, 830 kg/m3, 782 kg/m3, and 1,870 kg/m3 for mixtures of LWC-1, LWC-2, LWC-3, and Normal Mortar. The aim of this research was the performance of lightweight concrete with EPS by determining the durability, density, and the compressive strength using a 5% hydrochloric acid (HCl) solution. In the previous studies, the EPS had been heated before mixed. In this study, the EPS had not been heated and directly used in the mixing process. The lightweight concrete with EPS was very potential to reduce structure mass then resulted in a lower earthquake loads on the structures. There were three different conditions of treatment for the specimens that were open room, completely immersing in HCl 5%, and cyclic. The durability of lightweight concrete was determined during 28 and 56 days of immersion in HCl solution to obtain the results of reduced compressive strength and density. The condition III showed the most significant reduction in density and compressive strength at the age of 56 days immersion. The normal mortar has the best durability when compared to all LWCs, with a reduction of density and compressive strength of 14.08% and 32.88%, while the LWC-1 showed the best durability with a reduction in density and compressive strength of 18.41% and 35.44%.
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